Punching device for threaded part of hydraulic pipe

By designing a punching device for hydraulic pipe threaded parts, and using motors, threaded rods and other components to achieve automated punching, the problems of low working efficiency and high cost of existing equipment are solved, and the work efficiency is improved and costs are reduced.

CN223011644UActive Publication Date: 2025-06-24SHANGHAI JINGJIU METAL MATERIALS CO LTD
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Patent Information

Application Number
CN202421651967.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-06-24
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

The existing hydraulic pipe threaded punching equipment has low working efficiency and high cost, mainly due to the low manual operation efficiency.

Method used

A hydraulic pipe threaded piece punching device is designed, and the automatic punching of hydraulic pipe threaded pieces is achieved using components such as motors, threaded rods, bidirectional screws, arc plates and coil springs.

Benefits of technology

Through automated operations, the working efficiency of hydraulic pipe threaded parts is significantly improved, the cost is reduced, and the automatic punching of hydraulic pipe threaded parts is realized.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a hydraulic pipe threaded part punching device, relates to the technical field of hydraulic pipe threaded parts, and solves the problem that the existing hydraulic pipe threaded part is low in working efficiency. A punching machine is installed at the top of the base, a material receiving groove is formed in the top of the base, a fixing base is installed on one side of the material receiving groove, a feeding port is formed in one side of the fixing base, a fixing block is installed at the position, located on one side of the feeding port, of the top of the base, a first electric telescopic rod is installed on one side of the fixing block, and a connecting block is installed on one side of the first electric telescopic rod. A first arc-shaped plate and a second arc-shaped plate are installed at the top of the connecting block, a sliding groove is formed in the other side of the material receiving groove, and a slidable assembly is installed at the top of the sliding groove. According to the device, automatic punching of the hydraulic pipe threaded part is achieved, and the working efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of hydraulic pipe thread parts, and more specifically, particularly relates to a punching device for hydraulic pipe thread parts. Background Art

[0002] A punching machine is a mechanical device that, after installing raw materials, under the drive of a power mechanism, a punching die acts on the material to complete punching. The punching machine can perform operations such as sheet processing, stamping, die pressing, and embossing to force metal into the die.

[0003] Based on the above, the inventor found the following problems: Most of the existing punching equipment punches the hydraulic pipe thread parts by manually holding them, but the manual work efficiency is low and the cost is high.

[0004] Therefore, in view of this, research and improvement are carried out on the existing structure and deficiencies to provide a punching device for hydraulic pipe thread parts, in order to achieve a more practical value purpose. Summary of the Utility Model

[0005] In order to solve the above technical problems, the utility model provides a punching device for hydraulic pipe thread parts to solve the problem of low working efficiency of the current hydraulic pipe thread parts.

[0006] The purpose and effect of the punching device for hydraulic pipe thread parts of the utility model are achieved by the following specific technical means:

[0007] The punching device for hydraulic pipe thread parts includes a base. An punching machine is installed on the top of the base. A material receiving groove is opened on the top of the base. A fixed seat is installed on one side of the material receiving groove. A feeding port is installed on one side of the fixed seat. A fixed block is installed on the top of the base on the side of the feeding port. A first electric telescopic rod is installed on one side of the fixed block. A connecting block is installed on one side of the first electric telescopic rod. A first arc plate and a second arc plate are installed on the top of the connecting block. A sliding groove is opened on the other side of the material receiving groove. A slidable assembly is installed on the top of the sliding groove.

[0008] Further, the slidable assembly includes a first motor, and a first threaded rod is installed on the output shaft of the first motor through a coupling.

[0009] Further, a moving block is sleeved on the surface of the first threaded rod, and an adjustable assembly is installed inside the moving block.

[0010] Further, the adjustable assembly includes a second motor, and a first bidirectional lead screw is installed on the output end of the second motor through a coupling.

[0011] Further, a pair of sliders are sleeved on the surface of the first bidirectional lead screw, and a pair of snap rings are oppositely installed on the tops of the pair of sliders.

[0012] Further, an "L"-shaped block is installed on one side of the slider, and a second electric telescopic rod is installed on one side of the "L"-shaped block.

[0013] Further, a rotating shaft is installed on one side of the first arc-shaped plate, a second arc-shaped plate is installed on one side of the rotating shaft, a coil spring is installed on one side of the rotating shaft, one end of the coil spring is connected to the first arc-shaped plate, and the other end of the coil spring is connected to the second arc-shaped plate.

[0014] Further, a hydraulic pipe thread part is installed on the tops of the first arc-shaped plate and the second arc-shaped plate.

[0015] Compared with the prior art, the utility model has the following beneficial effects:

[0016] Through the coordinated use of the first motor, the second motor, the slider, the moving block, the first bidirectional lead screw, the first threaded rod, the first electric telescopic rod, the first arc-shaped plate, the second arc-shaped plate, and the snap ring, the operator turns on the first motor, and the first motor drives the first threaded rod to rotate. The rotation of the first threaded rod drives the moving block to move until it reaches the tail of the hydraulic pipe thread part. Then, the second motor is turned on, and the second motor drives the first bidirectional lead screw to rotate. A pair of sliders move in opposite directions on the first bidirectional lead screw until the snap ring clamps the hydraulic pipe thread part. At this time, the first electric telescopic rod is turned on, and the second arc-shaped plate is squeezed and moves downward through the rotating shaft. After the squeezing force disappears, the coil spring drives it to reset. In this way, the second hydraulic pipe thread part will continue to fall onto the first arc-shaped plate and the second arc-shaped plate, and this movement is repeated. Then, the hydraulic pipe thread part is sent into the punching machine for punching. After punching, the first motor rotates in the reverse direction to drive the moving block to move backward, and the hydraulic pipe thread part is taken out until it reaches the receiving groove. The second motor rotates in the reverse direction to drive the slider to move, and then the second electric telescopic rod is turned on. The second electric telescopic rod is turned on to push the hydraulic pipe thread part out of the snap ring and into the receiving groove, so that automatic punching of the hydraulic rod thread part can be realized, further saving costs and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic diagram of the punching device for hydraulic pipe thread parts of the utility model.

[0018] Figure 2 is a schematic diagram of the slidable assembly of the punching device for hydraulic pipe thread parts of the utility model.

[0019] Figure 3 is a schematic diagram of the first electric telescopic rod of the punching device for hydraulic pipe thread parts of the utility model.

[0020] Figure 4 It is a schematic diagram of the adjustable component of the punching device for the hydraulic pipe thread parts of the present utility model.

[0021] Figure 5 It is a schematic diagram of the first arc-shaped plate of the punching device for the hydraulic pipe thread parts of the present utility model.

[0022] In the figure, the corresponding relationship between the component names and the drawing reference numbers is as follows:

[0023] 1. Base; 2. Punching machine; 3. Feeding port; 4. Material receiving trough; 5. First electric telescopic rod; 6. Fixed block; 7. Chute; 8. Connecting block; 9. First motor; 10. First threaded rod; 11. Moving block; 12. Second motor; 13. First double-headed screw rod; 14. Slide block; 15. Snap ring; 16. "L"-shaped block; 17. Second electric telescopic rod; 18. First arc-shaped plate; 19. Second arc-shaped plate; 20. Rotating shaft; 21. Torsion spring; 22. Hydraulic pipe thread part; 23. Fixed seat. Specific embodiments

[0024] The following further describes in detail the embodiments of the present utility model in conjunction with the drawings and examples. The following examples are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0025] In the description of the present utility model, unless otherwise specified, "a plurality of" means two or more; the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present utility model. In addition, the terms "first", "second", "third", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0026] In the description of the present utility model, it should be noted that unless otherwise clearly specified and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0027] Example:

[0028] As shown in Figure 1 to Figure 5 shown:

[0029] The utility model provides a punching device for hydraulic pipe thread parts, which includes a base 1. A punching machine 2 is installed on the top of the base 1. A material receiving groove 4 is formed on the top of the base 1. A fixed seat 23 is installed on one side of the material receiving groove 4. A feeding port 3 is installed on one side of the fixed seat 23. A fixed block 6 is installed on the top of the base 1 on one side of the feeding port 3. A first electric telescopic rod 5 is installed on one side of the fixed block 6. A connecting block 8 is installed on one side of the first electric telescopic rod 5. A first arc plate 18 and a second arc plate 19 are installed on the top of the connecting block 8. A sliding groove 7 is formed on the other side of the material receiving groove 4. A slidable assembly is installed on the top of the sliding groove 7.

[0030] Wherein, the slidable assembly includes a first motor 9. The output shaft of the first motor 9 is installed with a first threaded rod through a coupling. When the first motor 9 is started, it drives the hydraulic pipe thread part 22 to move horizontally forward. When the first motor 9 rotates in the reverse direction, it drives the moving block 11 to move backward.

[0031] Wherein, a moving block 11 is sleeved on the surface of the first threaded rod 10. An adjustable assembly is installed inside the moving block 11.

[0032] Wherein, the adjustable assembly includes a second motor 12. The output end of the second motor 12 is installed with a first bidirectional lead screw 13 through a coupling.

[0033] Wherein, a pair of sliders 14 are sleeved on the surface of the first bidirectional lead screw 13. And a pair of snap rings 15 are oppositely installed on the tops of the pair of sliders 14. When the second motor 12 is started, it drives the first bidirectional lead screw 13 to rotate. The pair of sliders 14 move in opposite directions on the first bidirectional lead screw 13 until the snap rings 15 clamp the hydraulic pipe thread part 22.

[0034] Wherein, an "L"-shaped block 16 is installed on one side of the slider 14. A second electric telescopic rod 17 is installed on one side of the "L"-shaped block 16. When the second electric telescopic rod 17 is started, it pushes the hydraulic pipe thread part 22 out of the snap ring 15 and into the material receiving groove 4.

[0035] Wherein, a rotating shaft 20 is installed on one side of the first arc plate 18. A second arc plate 19 is installed on one side of the rotating shaft 20. A coil spring 21 is installed on one side of the rotating shaft 20. One end of the coil spring 21 is connected to the first arc plate 18, and the other end of the coil spring 21 is connected to the second arc plate 19.

[0036] Wherein, a hydraulic pipe thread part 22 is installed on the tops of the first arc plate 18 and the second arc plate 19.

[0037] The specific usage method and function of this embodiment:

[0038] Before the installation and use of the present utility model, the operator needs to check the internal components or structures of the device. After the inspection is correct, it can be used normally. First, the operator puts the hydraulic pipe threaded part 22 into the feed port 3. The hydraulic pipe threaded parts 22 will be stacked in the feed port 3 in sequence. The first hydraulic pipe threaded part 22 will fall onto the first arc-shaped plate 18 and the second arc-shaped plate 19. At this time, the first motor 9 is started. The first motor 9 drives the hydraulic pipe threaded part 22 to move horizontally forward until it moves to the position of the punching machine 2. At this time, the operator starts the first motor 9. The first motor 9 drives the first threaded rod 10 to rotate. The rotation of the first threaded rod 10 drives the moving block 11 to move until it moves to the tail of the hydraulic pipe threaded part 22. Then, the second motor 12 is turned on. The second motor 12 drives the first double-headed lead screw 13 to rotate. A pair of sliders 14 move in opposite directions on the first double-headed lead screw 13 until the snap ring 15 clamps the hydraulic pipe threaded part 22. At this time, the first electric telescopic rod 5 is turned on. The second arc-shaped plate 19 is squeezed and moves downward through the rotating shaft 20. After the squeezing force disappears, the coil spring 21 drives it to reset. In this way, the second hydraulic pipe threaded part 22 will continue to fall onto the first arc-shaped plate 18 and the second arc-shaped plate 19. Repeat this movement, and then send the hydraulic pipe threaded part 22 into the punching machine 2 for punching. After punching, the first motor 9 rotates in the reverse direction to drive the moving block 11 to move backward, and the hydraulic pipe threaded part 22 is taken out until it moves to the receiving trough 4. The second motor 12 rotates in the reverse direction to drive the slider 14 to move. Then, the second electric telescopic rod 17 is turned on. The second electric telescopic rod 17 is turned on to push the hydraulic pipe threaded part 22 out of the snap ring 15 and into the receiving trough 4.

[0039] The embodiments of the present utility model are given for purposes of illustration and description, and are not exhaustive or limit the present utility model to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better explain the principles of the present utility model and its practical application, and to enable those of ordinary skill in the art to understand the present utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. A hydraulic pipe thread punching device, comprising a base (1), characterized in that: A punching machine (2) is installed on the top of the base (1); a material receiving trough (4) is provided on the top of the base (1); a fixing seat (23) is installed on one side of the material receiving trough (4); a feeding port (3) is installed on one side of the fixing seat (23); a fixing block (6) is installed on the top of the base (1) on one side of the feeding port (3); a first electric telescopic rod (5) is installed on one side of the fixing block (6); a connecting block (8) is installed on one side of the first electric telescopic rod (5); a first arc plate (18) and a second arc plate (19) are installed on the top of the connecting block (8); a hydraulic pipe threaded part (22) is installed on the top of the first arc plate (18) and the second arc plate (19); a slide groove (7) is provided on the other side of the material receiving trough (4); a slidable component is installed on the top of the slide groove (7).

2. The hydraulic pipe thread punching device according to claim 1, characterized in that: The slidable assembly comprises a first motor (9), the output shaft of which is mounted with a first threaded rod (10) via a coupling.

3. The punching device for hydraulic pipe threaded parts according to claim 2, characterized in that: A moving block (11) is sleeved on the surface of the first threaded rod (10), and an adjustable component is installed inside the moving block (11).

4. The punching device for hydraulic pipe threaded parts according to claim 3, characterized in that: The adjustable component comprises a second motor (12), and a first bidirectional screw rod (13) is mounted on the output end of the second motor (12) via a coupling.

5. The hydraulic pipe thread punching device according to claim 4, characterized in that: A pair of sliders (14) are mounted on the surface of the first bidirectional screw rod (13), and a pair of clamping rings (15) are mounted on the tops of the sliders (14) in a relative manner.

6. The punching device for hydraulic pipe threaded parts according to claim 5, characterized in that: An "L"-shaped block (16) is installed on one side of the sliding block (14), and a second electric telescopic rod (17) is installed on one side of the "L"-shaped block (16).

7. The hydraulic pipe thread punching device according to claim 1, characterized in that: A rotating shaft (20) is installed on one side of the first arc-shaped plate (18), a second arc-shaped plate (19) is installed on one side of the rotating shaft (20), a coil spring (21) is installed on one side of the rotating shaft (20), one end of the coil spring (21) is connected to the first arc-shaped plate (18), and the other end of the coil spring (21) is connected to the second arc-shaped plate (19).